References

  1. S. Chen, J. Zhang, C. Zhang, Q. Yue, Y. Li, C. Li, Equilibrium and kinetic studies of methyl orange and methyl violet adsorption on activated carbon derived from Phragmites australis, Desalination, 252 (2010) 149–156.
  2. J. Babu, Z.V.P. Murthy, Treatment of textile dyes containing waste waters with PES/PVA thin film composite nanofiltration membranes, Sep. Purf. Tech., 183 (2017) 66–72.
  3. J. He, A. Cui, S. Deng, J.P. Chen, Treatment of methylene blue containing wastewater by a cost-effective micro-scale biochar/polysulfone mixed matrix hollow fiber membrane: Performance and mechanism studies, J. Colloid Interf. Sci., 512 (2018) 190–197.
  4. H.-F. Qian, G. Feng, G. Bai, Y.-C. Liu, L.-L. Hu, A contrastive study of adsorption behaviors on polyurethane fiber with diester/diurethane tethered and non-tethered azo disperse dyes, Dyes Pigm., 145 (2017) 301–306.
  5. F. Jiang, D.M. Dinh, Y.-L. Hsieh, Adsorption and desorption of cationic malachite green dye on cellulose nanofibril aerogels, Carbohyd. Polym., 173 (2017) 286–294.
  6. S. Ortiz-Monsalve, J. Dornelles, E. Poll, M. Ramirez-Castrillón, P. Valente, M. Gutterres, Biodecolourisation and biodegradation of leather dyes by a native isolate of Trametes villosa, Process Saf. Environ., 109 (2017) 437–451.
  7. W. Sun, C. Zhang, J. Chen, B. Zhang, H. Zhang, Y. Zhang, L. Chen, Accelerating biodegradation of a mono azo dye Acid Orange 7 by using its endogenous electron donors, J. Hazard. Mater., 324 (2017) 739–743.
  8. E. GilPavas, I. Dobrosz-Gómez, M.Á. Gómez-García, Coagulation-flocculation sequential with Fenton or Photo-Fenton processes as an alternative for the industrial textile wastewater treatment, J. Environ. Manage., 191 (2017) 189–197.
  9. W. Wang, Q. Yue, R. Li, W. Song, B. Gao, X. Shen, Investigating coagulation behavior of chitosan with different Al species dual-coagulants in dye wastewater treatment, J. Taiwan Inst. Chem. E., 78 (2017) 423–430.
  10. R. Li, B. Gao, K. Guo, Q. Yue, H. Zheng, Y. Wang, Effects of paper making sludge-based polymer on coagulation behavior in the disperse and reactive dyes wastewater treatment, Bioresource Technol., 240 (2017) 59–67.
  11. S. Seshadri, P.L. Bishop, A.M. Agha, Anaerobic/aerobic treatment of selected azo dyes in wastewater, Waste Manage., 14 (1994) 127–137.
  12. M. Unlu, H. Yukseler, U. Yetis, Indigo dyeing wastewater reclamation by membrane-based filtration and coagulation processes, Desalination, 240 (2009) 178–185.
  13. S. Wang, Z.H. Zhu, A. Coomes, F. Haghseresht, G.Q. Lu, The physical and surface chemical characteristics of activated carbons and the adsorption of methylene blue from wastewater, J. Colloid Interf. Sci., 284 (2005) 440–446.
  14. M. Dilaver, S.M. Hocaoğlu, G. Soydemir, M. Dursun, B. Keskinler, İ. Koyuncu, M. Ağtaş, Hot wastewater recovery by using ceramic membrane ultra filtration and its re-usability in textile industry, J. Clean. Prod., 171 (2018) 220–233.
  15. E. Hassanzadeh, M. Farhadian, A. Razmjou, N. Askari, An efficient wastewater treatment approach for a real woolen textile industry using a chemical assisted NF membrane process, Environ. Nanotechnol. Monitor. Manage., 8 (2017) 92–96.
  16. T.V. Luong, S. Schmidt, S.A. Deowan, J. Hoinkis, A. Figoli, F. Galiano, Membrane bioreactor and promising application for textile industry in Vietnam, Procedia CIRP, 40 (2016) 419–424.
  17. P.V. Chai, E. Mahmoudi, Y.H. Teow, A.W. Mohammad, Preparation of novel polysulfone-Fe3O4/GO mixed-matrix membrane for humic acid rejection, J. Water Process Eng., 15 (2017) 83–88.
  18. K.C. Ho, Y.H. Teow, W.L. Ang, A.W. Mohammad, Novel GO/OMWCNTs mixed-matrix membrane with enhanced antifouling property for palm oil mill effluent treatment, Sep. Purf. Tech., 177 (2017) 337–349.
  19. Y. Liu, F. Li, Q. Xia, J. Wu, J. Liu, M. Huang, J. Xie, Conductive 3D sponges for affordable and highly-efficient water purification, Nanoscale (2018).
  20. N.A.A. Hamid, A.F. Ismail, T. Matsuura, A.W. Zularisam, W.J. Lau, E. Yuliwati, M.S. Abdullah, Morphological and separation performance study of polysulfone/titanium dioxide (PSF/TiO2) ultrafiltration membranes for humic acid removal, Desalination, 273 (2011) 85–92.
  21. F. Li, F. Zhao, M. Huang, C. Ma, B. Yang, Q. Tian, Thin-film composite membranes with nano composite substrate modified with graphene oxide/TiO2 for forward osmosis process, Desal. Water Treat., 70 (2017) 64–78.
  22. M. Peyravi, A. Rahimpour, M. Jahanshahi, A. Javadi, A. Shockravi, Tailoring the surface properties of PES ultrafiltration membranes to reduce the fouling resistance using synthesized hydrophilic copolymer, Micropor. Mesopor. Mater., 160 (2012) 114–125.
  23. L. Zhao, W.S.W. Ho, Novel reverse osmosis membranes incorporated with a hydrophilic additive for seawater desalination, J. Membr. Sci., 455 (2014) 44–54.
  24. Y.H. Teow, A.L. Ahmad, J.K. Lim, B.S. Ooi, Preparation and characterization of PVDF/TiO2 mixed matrix membrane via in situ colloidal precipitation method, Desalination, 295 (2012) 61–69.
  25. Y.H. Teow, PVDF-TiO2 mixed-matrix membrane with anti-fouling properties for humic acid removal, Malaysia, Universiti Sains Malaysia, 2014.
  26. Y.H. Teow, A.A. Latif, J.K. Lim, H.P. Ngang, L.Y. Susan, B.S. Ooi, Hydroxyl functionalized PVDF–TiO2 ultrafiltration membrane and its anti fouling properties, J. Appl. Polym. Sci., 132(21) (2015) 1–11.
  27. Y.H. Teow, A.L. Ahmad, J.K. Lim, B.S. Ooi, Studies on the surface properties of mixed-matrix membrane and its antifouling properties for humic acid removal, J. Appl. Polym. Sci., 128 (2013) 3184–3192.
  28. Y.H. Teow, B.S. Ooi, A.L. Ahmad, Fouling behaviours of PVDF/TiO2 mixed-matrix membrane applied to humic acid treatment, J. Water Process Eng., 15 (2017) 89–98.
  29. Y.H. Teow, A.L. Ahmad, B.S. Ooi, Surface chemistry and dispersion property of titanium dioxide nano particles in water suspension, Global J. Environ. Sci. Tech., 2 (2012) 1–6.
  30. A. Teleki, M.K. Akhtar, S.E. Pratsinis, The quality of SiO2-coatings on flame-made TiO2-based nano particles, J. Mater. Chem., 18 (2008) 3547–3555.
  31. S.I. Seok, J.H. Kim, TiO2 nanoparticles formed in silica sol–gel matrix, Mater. Chem. Phys., 86 (2004) 176–179.
  32. P. Vandezande, X. Li, L.E.M. Gevers, I.F.J. Vankelecom, High throughput study of phase inversion parameters for polyimide-based SRNF membranes, J. Membr. Sci., 330 (2009) 307–318.
  33. J. Lee, H.-R. Chae, Y.J. Won, K. Lee, C.-H. Lee, H.H. Lee, I.-C. Kim, J.-m. Lee, Graphene oxide nano platelets composite membrane with hydrophilic and anti fouling properties for wastewater treatment, J. Membr. Sci., 448 (2013) 223–230.
  34. P. van de Witte, P.J. Dijkstra, J.W.A. van den Berg, J. Feijen, Phase separation processes in polymer solutions in relation to membrane formation, J. Membr. Sci., 117 (1996) 1–31.
  35. H.P. Ngang, A.L. Ahmad, S.C. Low, B.S. Ooi, Preparation of mixed-matrix membranes for micellar enhanced ultrafiltration based on response surface methodology, Desalination, 293 (2012) 7–20.
  36. X. Cao, J. Ma, X. Shi, Z. Ren, Effect of TiO2 nanoparticle size on the performance of PVDF membrane, Appl. Surf. Sci., 253 (2006) 2003–2010.
  37. A. Idris, N. Mat Zain, M.Y. Noordin, Synthesis, characterization and performance of asymmetric polyether sulfone (PES) ultra filtration membranes with polyethylene glycol of different molecular weights as additives, Desalination, 207 (2007) 324–339.
  38. D. Rana, T. Matsuura, Surface modifications for antifouling membranes, Chem. Rev., 110 (2010) 2448–2471.
  39. D.B. Burns, A.L. Zydney, Buffer effects on the zeta potential of ultra filtration membranes, J. Membr. Sci., 172 (2000) 39–48.
  40. K.E. O’Shea, C. Cardona, The reactivity of phenol in irradiated aqueous suspensions of TiO2. Mechanistic changes as a function of solution pH, J. Photo chem. Photo bio A., 91 (1995) 67–72.
  41. M.-L. Luo, J.-Q. Zhao, W. Tang, C.-S. Pu, Hydrophilic modification of poly (ether sulfone) ultrafiltration membrane surface by self-assembly of TiO2 nanoparticles, Appl. Surf. Sci., 249 (2005) 76–84.
  42. T.-H. Bae, T.-M. Tak, Preparation of TiO2 self-assembled polymeric nano composite membranes and examination of their fouling mitigation effects in a membrane bioreactor system, J. Membr. Sci., 266 (2005) 1–5.
  43. M.M. Bello, M.M. Nourouzi, L.C. Abdullah, T.S.Y. Choong, Y.S. Koay, S. Keshani, POME is treated for removal of color from biologically treated POME in fixed bed column: Applying wavelet neural network (WNN), J. Hazard. Mater., 262 (2013) 106–113.
  44. S.S. Madaeni, N. Ghaemi, Characterization of self-cleaning RO membranes coated with TiO2 particles under UV irradiation, J. Membr. Sci., 303 (2007) 221–233.
  45. S.S. Madaeni, N. Ghaemi, A. Alizadeh, M. Joshaghani, Influence of photo-induced super hydro philicity of titanium dioxide nano particles on the anti-fouling performance of ultra filtration membranes, Appl. Surf. Sci., 257 (2011) 6175–6180.
  46. H.K. Shon, S. Vigneswaran, H.H. Ngo, J.H. Kim, Chemical coupling of photocatalysis with flocculation and adsorption in the removal of organic matter, Water Res., 39 (2005) 2549–2558.
  47. J. Cho, G. Amy, J. Pellegrino, Membrane filtration of natural organic matter: initial comparison of rejection and flux decline characteristics with ultrafiltration and nanofiltration membranes, Water Res., 33 (1999) 2517–2526.